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Research ArticleArticle

Role of P-Glycoprotein in the Disposition of Macrocyclic Lactones: A Comparison between Ivermectin, Eprinomectin, and Moxidectin in Mice

Solange Kiki-Mvouaka, Cécile Ménez, Christiane Borin, Faouri Lyazrhi, Magali Foucaud-Vignault, Jacques Dupuy, Xavier Collet, Michel Alvinerie and Anne Lespine
Drug Metabolism and Disposition April 2010, 38 (4) 573-580; DOI: https://doi.org/10.1124/dmd.109.030700
Solange Kiki-Mvouaka
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Cécile Ménez
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Christiane Borin
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Faouri Lyazrhi
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Magali Foucaud-Vignault
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Jacques Dupuy
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Xavier Collet
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Michel Alvinerie
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Anne Lespine
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Abstract

Macrocyclic lactones (MLs) are lipophilic anthelmintics and substrates for P-glycoprotein (P-gp), an ATP-binding cassette transporter involved in drug efflux out of both host and parasites. To evaluate the contribution of P-gp to the in vivo kinetic disposition of MLs, the plasma kinetics, brain concentration, and intestinal excretion of three structurally different MLs (ivermectin, eprinomectin, and moxidectin) were compared in wild-type and P-gp-deficient [mdr1ab(−/−)] mice. Each drug (0.2 mg/kg) was administered orally, intravenously, or subcutaneously to the mice. Plasma, brain, and intestinal tissue concentrations were measured by high-performance liquid chromatography. The intestinal excretion rate after intravenous administration was determined at different levels of the small intestine by using an in situ intestinal perfusion model. P-gp deficiency led to a significant increase in the area under the plasma concentration-time curve (AUC) of ivermectin (1.5-fold) and eprinomectin (3.3-fold), whereas the moxidectin AUC was unchanged. Ivermectin and to a greater extent eprinomectin were both excreted by the intestine via a P-gp-dependent pathway, whereas moxidectin excretion was weaker and mostly P-gp-independent. The three drugs accumulated in the brains of the mdr1ab(−/−) mice, but eprinomectin concentrations were significantly lower. We concluded that eprinomectin disposition in mice is controlled mainly by P-gp efflux, more so than that of ivermectin, whereas moxidectin disposition appears to be mostly P-gp-independent. Given that eprinomectin and ivermectin have higher affinity for P-gp than moxidectin, these findings demonstrated that the relative affinity of MLs for P-gp could be predictive of the in vivo kinetic behavior of these drugs.

Footnotes

  • This work was supported in part by the European Union (PARASOL, http://www.parasol-project.net/project/parasol.php).

  • Article, publication date, and citation information can be found at http://dmd.aspetjournals.org.

    doi:10.1124/dmd.109.030700.

  • ABBREVIATIONS:

    P-gp
    P-glycoprotein
    ML
    macrocyclic lactone
    HPLC
    high-performance liquid chromatography
    AUC
    area under the plasma concentration-time curve
    MRT
    mean residence time
    wt
    wild type
    BCRP
    breast cancer resistance protein.

    • Received October 9, 2009.
    • Accepted January 20, 2010.
  • Copyright © 2010 by The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 38 (4)
Drug Metabolism and Disposition
Vol. 38, Issue 4
1 Apr 2010
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Research ArticleArticle

Role of P-Glycoprotein in the Disposition of Macrocyclic Lactones: A Comparison between Ivermectin, Eprinomectin, and Moxidectin in Mice

Solange Kiki-Mvouaka, Cécile Ménez, Christiane Borin, Faouri Lyazrhi, Magali Foucaud-Vignault, Jacques Dupuy, Xavier Collet, Michel Alvinerie and Anne Lespine
Drug Metabolism and Disposition April 1, 2010, 38 (4) 573-580; DOI: https://doi.org/10.1124/dmd.109.030700

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Research ArticleArticle

Role of P-Glycoprotein in the Disposition of Macrocyclic Lactones: A Comparison between Ivermectin, Eprinomectin, and Moxidectin in Mice

Solange Kiki-Mvouaka, Cécile Ménez, Christiane Borin, Faouri Lyazrhi, Magali Foucaud-Vignault, Jacques Dupuy, Xavier Collet, Michel Alvinerie and Anne Lespine
Drug Metabolism and Disposition April 1, 2010, 38 (4) 573-580; DOI: https://doi.org/10.1124/dmd.109.030700
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